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首页> 外文期刊>Applied optics >Comprehensive characterization of broadband ultralow reflectance of a porous nickel-phosphorus black surface by numerical simulation
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Comprehensive characterization of broadband ultralow reflectance of a porous nickel-phosphorus black surface by numerical simulation

机译:数值模拟对多孔多孔磷镍黑表面宽带超低反射率的综合表征

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摘要

Porous nickel-phosphorus (NiP) black surfaces exhibit excellent low reflectance in the visible and near-IR regions. Through use of a model of the surface morphology and composition, the reflectance was numerically simulated by a three-dimensional finite-difference time-domain method to determine the origin of the low reflectance. In agreement with experimental results, the simulations showed a spectrally flat, quite low reflectance of <0.1% over the entire visible-near-IR region under certain conditions. The reflectance depended strongly on the thickness of the black nickel oxide layer and the aspect ratio of the three-dimensional surface morphology. A method of validating the reflectance of porous NiP black surfaces is suggested.
机译:多孔的镍磷(NiP)黑色表面在可见光和近红外区域表现出出色的低反射率。通过使用表面形态和成分模型,通过三维有限差分时域方法对反射率进行了数值模拟,以确定低反射率的起因。与实验结果一致,模拟显示在某些条件下,整个可见-近-IR区域的光谱平坦,反射率非常低,<0.1%。反射率主要取决于黑色氧化镍层的厚度和三维表面形态的纵横比。建议一种验证多孔NiP黑色表面反射率的方法。

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